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1.High degree of intelligence:
It has automatic control function and can automatically adjust the operating status of the equipment according to the steam consumption, effectively avoiding energy waste. It is particularly suitable for use in places with unstable steam consumption.
2.New refrigerant research:
Continuously developing new environmentally friendly and efficient refrigerants to further improve the energy efficiency and environmental performance of heat pumps.
3.Energy recovery and reuse:
In some industrial scenarios, heat pumps can recover waste heat from the production process, increase the temperature of waste heat through heat pump technology, achieve energy reuse, and further improve energy utilization efficiency.
4.Silent design:
Using low-noise compressors and axial fans, combined with multiple noise reduction control system designs and sound-absorbing barrier technology, to reduce operating noise and provide a peaceful usage environment.
| Type | FKH-10I/CGW |
| Side air outlet | |
| Power specifications | 220V~50Hz |
| Heating capacity under A1 operating condition(20) | 10kW |
| Heating consumption power under A1 working condition | 4.8kW |
| Heating capacity under A2 working condition(7) | 9.5kW |
| Heating consumption power under A2 working condition | 5kW |
| Heating capacity under A3 working condition(-12) | 9.5kW |
| Heating consumption power under A3 working condition | 6.2kW |
| Heating capacity under A4working condition(-20) | 8kW |
| Heating consumption power under A4 working condition | 5.6kW |
| Maximum operating current | 40A |
| Discharge | 1.7m³/h |
| Noise | ≤56dB(A) |
| Water side pressure loss | ≤72kPa |
| Unit size (length x width x height mm) | 1030×410×1390 |
| CONNECT SIZE | DN32(hexagon nipples) |
| Unit weight (kg) | 160 |
1.Food processing:
It can be used for drying and heating food to improve its quality and taste. It can also be used in the drying process of food storage to extend its shelf life and prevent spoilage. In the beverage processing industry, meeting the heating needs during the production process.
2.Chemical production:
In equipment such as reaction vessels and acid pickling tanks, it can be used for disinfection and heating, improving equipment efficiency and reducing energy consumption.
3.Printing and dyeing textile:
Provides high-temperature hot water at 85 ℃ for industrial hot water needs such as printing and dyeing factories, bleaching and dyeing factories, dyeing and finishing factories, textile factories, etc. Compared with traditional boilers for hot water production, the operation is simple and stable, the operating cost is low, and it is environmentally friendly.
4.Electroplating dyeing:
Used to provide high-temperature hot water at 85 ℃ for insulation of electroplating solution and dehydration drying of parts, reducing the electroplating cost per unit product.
>> Product Operate Guide
Upon taking delivery of the goods, the purchaser will furnish an instructional video.
Q1.Is the maintenance cost of air source high-temperature heat pump high?
A: Not high. The high-temperature heat pump adopts a modular design, which is easy to install and maintain. At the same time, the device has a service life of 10-15 years and multiple protection mechanisms, reducing the probability of failure and thus lowering maintenance costs in the later stages.
Q2.Will water quality affect the efficiency of high-temperature heat pumps?
A: If there are too many impurities or corrosive substances, it may cause blockage or corrosion of the heat exchanger, affecting the heating efficiency and service life of the heat pump.
Regularly check water quality and install water treatment equipment if necessary.
Q3.Does air source high-temperature heat pump have an impact on the environment?
A: There are no negative impacts. The air source high-temperature heat pump does not have a combustion process during operation, and does not produce pollutants such as exhaust gas and waste residue, which is harmless to the environment. At the same time, using environmentally friendly refrigerants can reduce the damage to the ozone layer and the impact of greenhouse effect.